![]() |
市场调查报告书
商品编码
1744661
2032 年电子元件市场预测:按元件类型、材料、技术、分销管道、应用、最终用户和地区进行的全球分析Electronic Components Market Forecasts to 2032 - Global Analysis By Component Type, Material, Technology, Distribution Channel, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球电子元件市场预计在 2025 年达到 4,424 亿美元,到 2032 年将达到 10,270 亿美元,预测期内的复合年增长率为 12.4%。
电子元件是电路的基本组成部分,用于调节、控制和传输电讯号。电子元件分为主动元件(例如半导体和积体电路)、被动元件(例如电阻器、电容器和感应器)和电子机械(例如连接器和开关)。这些元件支援众多产业的电子设备功能,包括通讯、汽车、消费性电子和工业自动化。它们的高效整合可确保先进电子系统的效能最佳化、电源管理和讯号处理。
根据国际能源总署《全球电动车展望》报告,预计2022年全球电动车销量将超过1,000万辆,较去年同期成长35%,达到1,400万辆。电动车在整个汽车市场的份额预计将从2022年的14%激增,到2023年进一步扩大至18%。
消费性电子产品的爆炸性成长
智慧型手机、穿戴式装置和智慧家居设备的广泛应用正在推动半导体技术创新。微型化趋势和人工智慧功能的整合进一步加速了元件的发展。此外,物联网设备和互联生态系统的兴起也为高效能电子元件创造了新的机会。随着製造商专注于提高效率和降低功耗,预计市场将持续成长。
组件过时和产品生命週期短的风险
製造商必须不断更新其设计,以跟上不断发展的行业标准,这推高了生产成本。此外,快速变化的消费者偏好和新技术可能会导致现有组件过时。这项挑战在通讯和汽车等行业尤其普遍,因为与下一代系统的兼容性至关重要,阻碍了市场成长。
政府推动本地生产的措施和奖励
税收优惠、补贴和基础设施建设等奖励正在鼓励企业在本地设立生产设施。这些倡议旨在减少对进口的依赖,并增强供应链的韧性。此外,对半导体製造和研发的投资正在刺激创新,使製造商能够开发尖端电子元件。电子产品生产自给自足能力的提高预计将推动该行业的长期成长。
激烈的价格竞争和标准件的竞争力
电阻器和电容器等标准元件是大量生产的,导致製造商之间的成本竞争异常激烈。为了保持盈利,企业需要透过技术进步和增值来实现差异化。此外,原材料成本波动和供应链中断可能会影响定价策略,并阻碍市场成长。
新冠疫情扰乱了全球供应链,影响了电子元件的供应。停工停产导致生产延误,造成汽车和消费性电子等关键产业的供不应求。然而,这场危机也加速了数位转型,增加了对半导体和连接解决方案的需求。远距办公、线上学习和远端医疗推动了对高效能运算设备的需求,从而促进了电子元件的销售。
预计在预测期内,主动元件部分将以最快的速度成长
主动元件领域预计将在预测期内占据最大的市场占有率,因为它们在放大、开关和能量转换等电子电路功能中发挥关键作用。电晶体、二极体、积体电路和电源管理元件等元件在从消费性电子产品到汽车和工业自动化等各种应用中都至关重要。它们在智慧型设备和节能係统中的应用日益广泛,显着增加了需求。
预计表面黏着技术(SMT) 领域在预测期内将达到最高的复合年增长率。
表面黏着技术(SMT) 领域预计将在预测期内实现最高成长率,这得益于其能够高效生产紧凑、高密度的电子组件。 SMT 能够将元件直接有效率地贴装在印刷电路基板,从而提高机械性能并缩短生产时间。随着设备尺寸不断缩小,这种组装方法正成为各行各业製造商的首选。
在预测期内,亚太地区预计将占据最大的市场占有率,这得益于其在全球电子製造业的主导地位。中国大陆、韩国、日本和台湾等国家和地区是主要的半导体和电子组装中心,为全球市场供应零件。该地区受益于强大的基础设施、熟练的劳动力以及支持大规模生产的优惠政府政策。此外,这些经济体对先进电子产品的消费需求不断增长,进一步刺激了国内消费。
在预测期内,由于对下一代技术的投资不断增加以及半导体生产的本土化,北美预计将实现最高的复合年增长率。该地区对航太、国防、5G基础设施和电动车等应用的零件的需求正在增长,这些零件需要高可靠性和高性能。政府加强国内半导体产能的措施也促进了这一成长。
According to Stratistics MRC, the Global Electronic Components Market is accounted for $442.4 billion in 2025 and is expected to reach $1002.7 billion by 2032 growing at a CAGR of 12.4% during the forecast period. Electronic components are fundamental building blocks of electrical circuits, designed to regulate, control, or transmit electrical signals. They are categorized into active components (such as semiconductors and integrated circuits), passive components (including resistors, capacitors, and inductors), and electromechanical components (such as connectors and switches). These components enable the functionality of various electronic devices across industries, including telecommunications, automotive, consumer electronics, and industrial automation. Their efficient integration ensures performance optimization, power management, and signal processing in advanced electronic systems.
According to IEA's Global Electric Vehicle Outlook, more than 10 million electric cars will be sold globally in 2022, and the sales are expected to grow by another 35% or 14 million in the year. This explosive growth of electric cars' share of the overall car market has risen from 14% in 2022 and is set to increase further to 18% in 2023.
Explosive growth of consumer electronics
Increasing adoption of smartphones, wearables, and smart home devices is driving innovation in semiconductor technology. Miniaturization trends and the integration of AI-powered functionalities are further accelerating component development. Additionally, the rise of IoT-enabled devices and connected ecosystems is creating new opportunities for high-performance electronic components. As manufacturers focus on enhancing efficiency and reducing power consumption, the market is expected to witness sustained growth.
Risk of component obsolescence and short product lifecycles
Manufacturers must continuously update designs to keep pace with evolving industry standards, which adds to production costs. Additionally, rapid shifts in consumer preferences and emerging technologies can render existing components outdated. This challenge is particularly significant in sectors such as telecommunications and automotive, where compatibility with next-generation systems is crucial which impedes the market growth.
Government initiatives and incentives for local manufacturing
Incentives such as tax benefits, subsidies, and infrastructure development are encouraging companies to establish production facilities locally. These initiatives aim to reduce dependency on imports and strengthen supply chain resilience. Additionally, investments in semiconductor fabrication and research are fostering innovation, enabling manufacturers to develop cutting-edge electronic components. The push for self-reliance in electronics production is expected to drive long-term industry growth.
Intense price competition and commoditization of standard components
Standardized components, such as resistors and capacitors, are produced in high volumes, leading to aggressive cost competition among manufacturers. Companies must differentiate their offerings through technological advancements and value-added features to maintain profitability. Additionally, fluctuations in raw material costs and supply chain disruptions can impact pricing strategies leading to stunt market growth.
The COVID-19 pandemic disrupted global supply chains, affecting the availability of electronic components. Lockdowns and factory closures led to production delays, causing shortages in critical sectors such as automotive and consumer electronics. However, the crisis also accelerated digital transformation, increasing demand for semiconductors and connectivity solutions. Remote work, e-learning, and telemedicine drove the need for high-performance computing devices, boosting component sales.
The active components segment is expected to be the largest during the forecast period
The active components segment is expected to account for the largest market share during the forecast period owing to their critical role in electronic circuit functionality, including amplification, switching, and energy conversion. Components such as transistors, diodes, integrated circuits, and power management devices are essential across a wide spectrum of applications, from consumer electronics to automotive and industrial automation. Their rising usage in smart devices and energy-efficient systems has significantly increased demand.
The surface-mount technology (SMT) segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the surface-mount technology (SMT) segment is predicted to witness the highest growth rate due to its ability to streamline the manufacturing of compact and high-density electronic assemblies. SMT allows for the efficient placement of components directly onto printed circuit boards, improving mechanical performance and reducing production time. As devices become increasingly compact, this assembly method is becoming the preferred choice for manufacturers across sectors.
During the forecast period, the Asia Pacific region is expected to hold the largest market share driven by its dominant position in global electronics manufacturing. Countries such as China, South Korea, Japan, and Taiwan host major semiconductor and electronic assembly hubs, supplying components to markets worldwide. The region benefits from a strong infrastructure, skilled workforce, and favorable government policies that support large-scale production. Additionally, rising consumer demand for advanced electronics within these economies further boosts internal consumption.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR attributed to increasing investments in next-generation technologies and onshoring of semiconductor production. The region is seeing heightened demand for components used in aerospace, defense, 5G infrastructure, and electric vehicles, all of which require high reliability and performance. Government initiatives aimed at strengthening domestic semiconductor capabilities are also contributing to growth.
Key players in the market
Some of the key players in Electronic Components Market include Amphenol Corporation, TE Connectivity Ltd., Murata Manufacturing Co. Ltd, TDK Corporation, Corning Incorporated, Delta Electronics, Inc., Hon Hai Precision Industry Co. Ltd (Foxconn), Celestica Inc., E Ink Holdings, Inc., Unimicron Technology Corp, Shengyi Technology Co. Ltd, Chaozhou Three-Circle Group, Sunny Optical Technology Group Co Ltd, Fabrinet, Elite Material Co. Ltd, Jabil Inc., Flex Ltd., and LARGAN Precision Co., Ltd.
In May 2025, TDK accelerated the launch of its third-generation silicon anode batteries due to rising demand from smartphone manufacturers. These batteries offer higher energy density compared to conventional ones. A fourth-generation battery is planned for release next year.
In May 2025, Foxconn announced a partnership with NVIDIA to build a state-of-the-art AI Factory supercomputing center in Taiwan. This facility will provide advanced AI infrastructure to various sectors.
In April 2025, Fabrinet partnered with Innoviz Technologies to commence mass production of the InnovizTwo LiDAR product platform. This collaboration focuses on manufacturing both long-range and short-range LiDAR systems. The partnership aims to meet the growing demand for advanced driver-assistance systems.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.